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Higher Neuromuscular Manifestations of Fatigue in Dynamic than Isometric Pull-Up Tasks in Rock Climbers

机译:在运动中疲劳的神经肌肉表现比在攀岩者中的等距上拉任务更高

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摘要

Neuromuscular assessment of rock climbers has been mainly focused on forearm muscles in the literature. We aimed to extend the body of knowledge investigating on two other upper limb muscles during sport-specific activities in nine male rock climbers. We assessed neuromuscular manifestations of fatigue recording surface electromyographic signals from brachioradialis and teres major muscles, using multi-channel electrode arrays. Participants performed two tasks until volitional exhaustion: a sequence of dynamic pull-ups and an isometric contraction sustaining the body at half-way of a pull-up (with the elbows flexed at 90°). The tasks were performed in randomized order with 10 minutes of rest in between. The normalized rate of change of muscle fiber conduction velocity was calculated as the index of fatigue. The time-to-task failure was significantly shorter in the dynamic (31 ±10 s) than isometric contraction (59 ±19 s). The rate of decrease of muscle fiber conduction velocity was found steeper in the dynamic than isometric task both in brachioradialis (isometric: −0.2 ±0.1%/s; dynamic: −1.2 ±0.6%/s) and teres major muscles (isometric: −0.4±0.3%/s; dynamic: −1.8±0.7%/s). The main finding was that a sequence of dynamic pull-ups lead to higher fatigue than sustaining the body weight in an isometric condition at half-way of a pull-up. Furthermore, we confirmed the possibility to properly record physiological CV estimates from two muscles, which had never been studied before in rock climbing, in highly dynamic contractions.
机译:在文献中,攀岩者的神经肌肉评估主要集中在前臂肌肉上。我们的目标是扩大知识范围,以便在9名男性攀岩运动员的运动特定活动期间研究另外两个上肢肌肉。我们使用多通道电极阵列评估了疲劳的神经肌肉表现,这些疲劳记录了腕radi骨和主要肌肉的表面肌电信号。参与者执行了两项任务,直到身体筋疲力尽:一系列的动态引体向上运动和等距收缩,以在引体向上运动的中途维持身体(肘部弯曲90°)。任务以随机顺序执行,中间休息10分钟。计算肌纤维传导速度的标准化变化率作为疲劳指数。动态(31±10 s)时的任务失败时间明显短于等距收缩(59±19 s)。在臂radi肌(等轴测:-0.2±0.1%/ s;动态:-1.2±0.6%/ s)和主要大腿肌肉(等轴测:- 0.4±0.3%/ s;动态:-1.8±0.7%/ s)。主要发现是一系列动态引体向上导致的疲劳感比在引体向上中途等轴测条件下维持体重更高。此外,我们确认了可以在高度动态的收缩中正确记录两块肌肉的生理CV估计值的情况,这在攀岩之前从未研究过。

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